Shangguan Xiaoyan, Zhu Lihan, Zhang Yingzi, Li Yan, Zhang Qian
Jilin Province Key Laboratory of Organic Functional Molecular Design & Synthesis, Department of Chemistry, Northeast Normal University, Changchun, China.
State Key Laboratory of Organometallic Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai, China.
Nat Commun. 2025 May 28;16(1):4939. doi: 10.1038/s41467-025-60227-0.
Catalytic enantioselective three-component aminative difunctionalization of readily available 1,3-dienes offers a straightforward methodology to fast access significant and complex chiral allylic amines. Nevertheless, compared to the widely studied two-component reactions, the three-component reactions, especially using anilines-very common bulk feedstock chemicals as aminating reagents are underdeveloped. More importantly, the limited examples of enantioselective three-component aminative difunctionalization of 1,3-dienes with anilines only showed 1,2-selectivity; and the corresponding 1,4-regioselectivity remains unknown. Here, we report a copper-catalyzed enantioselective radical three-component 1,4-perfluoroalkylamination of 1,3-dienes with anilines and perfluoroalkyl reagents, efficiently providing an array of valuable perfluoroalkylated chiral allylic amines in good to excellent yields with excellent enantioselectivity. Mechanistic investigations, including controlled experiments and DFT studies, elucidate the origination of the regioselectivity and enantioselectivity, and suggest a radical reaction pathway involving an asymmetric cross-coupling between allylic radical and copper-stabilized nitrogen radical species to construct C-N bond enantioselectively.
对易得的1,3 - 二烯进行催化对映选择性三组分胺化双官能团化反应,为快速获得重要且复杂的手性烯丙基胺提供了一种直接的方法。然而,与广泛研究的双组分反应相比,三组分反应,尤其是使用苯胺(非常常见的大宗原料化学品)作为胺化试剂的反应尚未得到充分发展。更重要的是,1,3 - 二烯与苯胺的对映选择性三组分胺化双官能团化反应的有限实例仅显示出1,2 - 选择性;而相应的1,4 - 区域选择性仍然未知。在此,我们报道了一种铜催化的1,3 - 二烯与苯胺和全氟烷基试剂的对映选择性自由基三组分1,4 - 全氟烷基胺化反应,能以良好至优异的产率和出色的对映选择性高效地提供一系列有价值的全氟烷基化手性烯丙基胺。机理研究,包括对照实验和密度泛函理论(DFT)研究,阐明了区域选择性和对映选择性的起源,并提出了一种自由基反应途径,该途径涉及烯丙基自由基与铜稳定的氮自由基物种之间的不对称交叉偶联,以对映选择性地构建C - N键。